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Imagery Signal-Based Deep Learning Method for Prescreening Major Depressive Disorder

机译:基于图像信号的深度学习方法用于抑郁症的预筛

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Depression is a high-risk mental illness that can lead to suicide. However, for a variety of reasons, such as a negative perception of mental illness, most patients with depressive symptoms are reluctant to go to the hospital and miss appropriate treatment. Therefore, a simple prescreening method that an individual can use to identify depression is needed. Most EEG measurement devices that individuals use have few channels. However, most studies using EEG to diagnose depression have been conducted in a professional multichannel EEG environment. Therefore, it is difficult for individuals to prescreen depression based on the results of the studies. In this study, we proposed a model that predicts depression by using EEG data measured by a few channels so that it can measure depression using the EEG data measured by an individual. In this study, brain waves measured in two channels were imaged using STFT transform and a spectrogram. The EEG image data was then used in a deep learning model. As a result of the performance evaluation, 75% accuracy was shown for the classification of image depression EEGs and normal image type EEGs. As a result, low channel EEG data for deep learning can be used as an auxiliary tool to proactively diagnose depressed patients.
机译:抑郁症是一种高风险的精神疾病,可导致自杀。但是,由于各种原因,例如对精神疾病的否定感,大多数患有抑郁症症状的患者都不愿去医院错过适当的治疗。因此,需要一种个人可以用来识别抑郁的简单的预筛查方法。个人使用的大多数EEG测量设备的通道很少。但是,大多数使用脑电图诊断抑郁症的研究都是在专业的多通道脑电图环境中进行的。因此,基于研究结果,个人很难预先筛选抑郁症。在这项研究中,我们提出了一个模型,该模型通过使用一些通道测得的EEG数据来预测抑郁,从而可以使用个人测得的EEG数据来测量抑郁。在这项研究中,使用STFT变换和频谱图对在两个通道中测量到的脑波成像。然后将EEG图像数据用于深度学习模型。性能评估的结果表明,对图像压抑脑电图和正常图像类型脑电图的分类显示了75%的准确性。因此,用于深度学习的低通道EEG数据可用作辅助工具来主动诊断抑郁症患者。

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